首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >The expression of amh and amhr2 is associated with the development of gonadal tissue and sex change in the protandrous black porgy, Acanthopagrus schlegeli.
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The expression of amh and amhr2 is associated with the development of gonadal tissue and sex change in the protandrous black porgy, Acanthopagrus schlegeli.

机译:amh和amhr2的表达与性腺黑豚鼠Acanthopagrus schlegeli中性腺组织的发育和性别变化有关。

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The protandrous black porgy, Acanthopagrus schlegeli, has a striking life cycle, with sex differentiation at the juvenile stage, mono-male development, a bisexual gonad during the first 2 yr of life, and a male-to-female sex change (with vitellogenic oocytes) at 3 yr of age. In the present study, we investigated the possible roles of amh and amhr2 in gonadal development in a nonmammalian model organism (protandrous black porgy), especially in relation to sex differentiation, testicular and ovarian growth, and sex change. Fish of various ages were treated with estradiol or an aromatase inhibitor to induce the fish to become female. Furthermore, a natural sex change (2(+)-yr-old [>2 yr and <3 yr] fish) and a nonchemical method to surgically remove one of the pair of gonads to examine the possible roles of amh in the natural sex change were conducted. We present integrative in situ hybridization, immunohistochemical, cellular, and molecular data describing these phenomena. During gonadal sex differentiation, an increase in amh and amhr2 expression was detected. Higher levels of amh and amhr2 transcripts were observed in the testicular tissue when compared to the ovarian tissue in the bisexual gonad of 1(+)-yr-old (>1 yr and <2 yr) fish. Transcripts of amh reached peak levels in November (prespermatogenesis period) and then declined to the lowest levels in January (spawning period). Chemical-induced ovarian tissue had very low amh transcript levels but high levels of amhr2. Active testes had significantly higher amh and amhr2 expression levels as compared to inactive testes. In contrast, no difference in the expression of amh and amhr2 between active and inactive ovarian tissues was found. Transcripts of amh were expressed in the somatic cells of the spermatogonia and vitellogenic oocytes, and amhr2 was expressed in the somatic cells of the spermatogonia. Transcripts of amh decreased in the testicular tissue 5 mo before occurrence of the sex change into a female. In contrast, testicular amh expression remained high if the fish remained male. Human chorionic gonadotropin regulated amh and amhr2 expression in the testicular tissue but not in the ovarian tissue. The present results suggest that amh plays important roles in early testicular and ovarian development, late ovarian growth (e.g., vitellogenic oocytes), and natural sex change in the protandrous black porgy.
机译:黑头海豚(Acanthopagrus schlegeli)的生命周期惊人,在幼年期会出现性别分化,单身男性发育,在生命的前两年内双性恋性腺,以及男女性别变化(伴卵黄变性)卵母细胞)在3岁。在本研究中,我们调查了amh和amhr2在非哺乳动物模型有机体(原黑性海豚)中性腺发育中的可能作用,尤其是在性别分化,睾丸和卵巢生长以及性别变化方面。用雌二醇或芳香酶抑制剂处理各种年龄的鱼,以使其成为雌性。此外,自然发生性变化(2(+)岁[> 2年且<3年]鱼)和非化学方法通过手术移除一对性腺,以检查amh在自然性中的可能作用进行了更改。我们目前描述这些现象的综合原位杂交,免疫组化,细胞和分子数据。在性腺性别分化过程中,检测到amh和amhr2表达增加。与1(+)岁(> 1岁和<2岁)鱼的双性恋性腺中的卵巢组织相比,睾丸组织中观察到了更高水平的amh和amhr2转录物。 amh的转录本在11月(生精前期)达到最高水平,然后在1月(产卵期)降至最低水平。化学诱导的卵巢组织的amh转录水平非常低,但是amhr2的水平很高。与不活动的睾丸相比,活动的睾丸具有显着更高的amh和amhr2表达水平。相反,在活跃的和不活跃的卵巢组织之间,amh和amhr2的表达没有发现差异。 amh的转录物在精原细胞和卵黄母细胞中表达,amhr2在精原细胞中表达。在发生性别改变为雌性前5个月,睾丸组织中amh的转录水平下降。相反,如果鱼仍然是雄性,则睾丸的amh表达仍然很高。人绒毛膜促性腺激素调节睾丸组织而不是卵巢组织中的amh和amhr2表达。目前的结果表明,amh在睾丸和卵巢的早期发育,卵巢的晚期生长(例如卵黄卵母细胞)以及前黑斑豚鼠的自然性别变化中起着重要的作用。

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